Order number: UN203NPUPES
Part number: AC100072926
Applied in sectors ranging from fine chemicals to process chemistry, the Mini-Uniprep, PES, 0.45 µm filter offers versatility in handling various samples. This compact filtration tool, equivalent in size to 12 x 32 mm vials, is suitable for aqueous or organic samples within a 3 to 10 pH range, thanks to its Nylon (NYL) construction. For chemically aggressive solutions, Polytetrafluoroethylene (PTFE) is used. In the realm of biological samples requiring low protein binding media, Regenerated cellulose (RC) is employed. The Mini-Uniprep filter can also handle high particulate laden liquids, making it an ideal choice for certain applications in the fine chemicals sector. Its maximum operating temperature of 50 °C ensures compatibility with a broad spectrum of laboratory conditions. With a nominal force needed to compress approximately 8.2 kg, this filter provides robust performance under typical lab conditions.
| Name | Value | |
|---|---|---|
| Type | : | Mini-UniPrep'' |
| Brand | : | Whatman |
| Septa | : | PTFE coated silicone rubber |
| Material | : | PES |
| Dimensions | : | equivalent in size to 12 x 32 mm vials |
| Description | : | standard cap, translucent housing |
| UNSPSC 13.5 | : | 41104909 |
| Housing and cap | : | PP |
| Nylon (NYL) for | : | aqueous / organic samples in 3 to 10 pH range |
| Pore size [µm] | : | 0.45 |
| Filtering capacity | : | 0.4 ml |
| Polypropylene (PP) for | : | general filtration media / solvent based samples |
| Glass microfibre (GMF) for | : | high particulate laden liquids |
| Max. operating temperature | : | 50 °C |
| Regenerated cellulose (RC) for | : | biological samples requiring low protein binding media |
| Nominal force needed to compress | : | approx. 8.2 kg |
| Polytetrafluoroethylene (PTFE) for | : | chemically aggressive solutions |
| Polyvinylidene fluoride (PVDF) for | : | aqueous / organic solvents, low non-specific protein binding media |
| Polypropylene depth filter (dpPP) for | : | aqueous / organic solvents, high flow and loading capacity |
© 2026 Copyright. All Rights Reserved.
© 2026 Copyright. All Rights Reserved.